Design and Implementation of the Predictive Direct Torque Control ASIC

碩士 === 國立臺北科技大學 === 電機工程系所 === 100 === The thesis aims to design and implement a direct torque control (DTC) chip based on modified predictive scheme not only to decrease the ripple of the hysteresis controller but also to enhance the performance of motor controller. Verilog hardware description lan...

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Main Authors: Kai-Shiang Liang, 梁凱翔
Other Authors: Guo-Ming Sung
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/mmepuw
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spelling ndltd-TW-100TIT054420662019-05-15T20:51:52Z http://ndltd.ncl.edu.tw/handle/mmepuw Design and Implementation of the Predictive Direct Torque Control ASIC 預測型直接轉矩控制系統晶片設計與實現 Kai-Shiang Liang 梁凱翔 碩士 國立臺北科技大學 電機工程系所 100 The thesis aims to design and implement a direct torque control (DTC) chip based on modified predictive scheme not only to decrease the ripple of the hysteresis controller but also to enhance the performance of motor controller. Verilog hardware description language (HDL) is used to implement the hardware architecture; and that an ASIC is implemented in TSMC 0.18-μm technology with cell-based design style. In general, the hysteresis controller is used in traditional direct torque control system. However, the hysteresis controller will introduce more ripple in discrect digital system. Notify that both sampling and calculating delay time contribute the ripple response which degrades the control quality in motor system. By using the predictive scheme, we can not only improve the ripple issue of the traditional direct torque control technique, but also can make the control system more stable by decreasing the time delay in hysteresis controller have been verified. After the syntax and function, the control system is implemented with the synthesis tool, the auto place & routed tool, and the function simulation tool. Finally, an ASIC is fabricated in 0.18-μm 1P6M CMOS process for three-phase induction motor control system. Guo-Ming Sung 宋國明 2012 學位論文 ; thesis 64 zh-TW
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description 碩士 === 國立臺北科技大學 === 電機工程系所 === 100 === The thesis aims to design and implement a direct torque control (DTC) chip based on modified predictive scheme not only to decrease the ripple of the hysteresis controller but also to enhance the performance of motor controller. Verilog hardware description language (HDL) is used to implement the hardware architecture; and that an ASIC is implemented in TSMC 0.18-μm technology with cell-based design style. In general, the hysteresis controller is used in traditional direct torque control system. However, the hysteresis controller will introduce more ripple in discrect digital system. Notify that both sampling and calculating delay time contribute the ripple response which degrades the control quality in motor system. By using the predictive scheme, we can not only improve the ripple issue of the traditional direct torque control technique, but also can make the control system more stable by decreasing the time delay in hysteresis controller have been verified. After the syntax and function, the control system is implemented with the synthesis tool, the auto place & routed tool, and the function simulation tool. Finally, an ASIC is fabricated in 0.18-μm 1P6M CMOS process for three-phase induction motor control system.
author2 Guo-Ming Sung
author_facet Guo-Ming Sung
Kai-Shiang Liang
梁凱翔
author Kai-Shiang Liang
梁凱翔
spellingShingle Kai-Shiang Liang
梁凱翔
Design and Implementation of the Predictive Direct Torque Control ASIC
author_sort Kai-Shiang Liang
title Design and Implementation of the Predictive Direct Torque Control ASIC
title_short Design and Implementation of the Predictive Direct Torque Control ASIC
title_full Design and Implementation of the Predictive Direct Torque Control ASIC
title_fullStr Design and Implementation of the Predictive Direct Torque Control ASIC
title_full_unstemmed Design and Implementation of the Predictive Direct Torque Control ASIC
title_sort design and implementation of the predictive direct torque control asic
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/mmepuw
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